Laser Spectroscopy - Survey - AG Nörtershäuser

Laser Spectroscopy of radioactive Isotopes – Survey

Optical spectroscopy experiments on radionuclides performed on-line and published since January 1988 when the compilation by E.W. Otten[1] was closed for additional data. Data compiled and evaluated in [1] are indicated in the reference column as “Table x”. For the investigated isotopes the following information is given: the name of the element, the proton number Z, the mass number A of the isotopes measured, the experimental data obtained, the technique applied, the radioactive ion beam facility used, and the reference. Data published in refereed journals are compiled since January 1988.

Review Articles

R. Neugart
Collinear laser spectroscopy on unstable isotopes – A tool of nuclear physics
Hyp. Int. 24, 159-180 (1985)

E.W. Otten
Nuclear radii and moments of unstable isotopes, in Treatise on heavy-ion science
D.A. Bromley, Editor. 1989. p. 517-638

J. Billowes and P. Campbell
High-resolution laser spectroscopy for the study of nuclear sizes and shapes
J. Phys. G: Nucl. Part. Phys. 21, 707-739 (1995)

R. Neugart
Lasers in nuclear physics --A review
Eur. Phys. J. A 15, 35-39 (2002)

R. Neugart and G. Neyens
Nuclear Moments
Lecture Notes in Physics 700, 135-189 (2006)

B. Cheal and K. T. Flanagan
Progress in laser spectroscopy at radioactive ion beam facilities
J. Phys. G: Nucl. Part. Phys. 37, 113101 (2010)

V. N. Fedosseev, Yu. Kudryavtsev and V. I. Mishin
Resonance laser ionization of atoms for nuclear physics
Phys. Scr. 85, 058104 (2012)

K. Blaum, J. Dilling and W. Nörtershäuser
Precision atomic physics techniques for nuclear physics with radioactive beams
Phys. Scr. T152, 014017 (2013) | arXiv:1210.4045

B.A. Marsh, B. Andel, A.N. Andreyev, S. Antalic, D. Atanasov, A.E. Barzakh, B. Bastin, Ch. Borgmann, L. Capponi, T.E. Cocolios, T. Day Goodacre, M. Dehairs, X. Derkx, H. De Witte, D.V. Fedorov, V.N. Fedosseev, G.J. Focker, D.A. Fink, K.T. Flanagan, S. Franchoo, L. Ghys, M. Huyse, N. Imai, Z. Kalaninova, U. Köster, S. Kreim, N. Kesteloot, Yu. Kudryavtsev, J. Lane, N. Lecesne, V. Liberati, D. Lunney, K.M. Lynch, V. Manea, P.L. Molkanov, T. Nicol, D. Pauwels, L. Popescu, D. Radulov, E. Rapisarda, M. Rosenbusch, R.E. Rossel, S. Rothe, L. Schweikhard, M.D. Seliverstov, S. Sels, A.M. Sjödin, V. Truesdale, C. Van Beveren, P. Van Duppen, K. Wendt, F. Wienholtz, R.N. Wolf, S.G. Zemlyanoy
New developments of the in-source spectroscopy method at RILIS/ISOLDE
Nucl. Instrum. Methods B 317, 550-556 (2013)

P. Campbell, I. D. Moore and M. R. Pearson
Laser spectroscopy for nuclear structure physics
Prog. Part. Nucl. Phys. 86, 127-180 (2016)

R. Neugart, J. Billowes, M. L. Bissell, K. Blaum, B. Cheal, K. T. Flanagan, G. Neyens, W. Nörtershäuser and D. T. Yordanov
Collinear laser spectroscopy at ISOLDE: new methods and highlights
J. Phys. G: Nucl. Part. Phys. 44, 064002 (2017)

Abbreviations of used techniques

ABS: atomic beam spectroscopy; ATS: Atom Trap Spectroscopy; β: beta-decay detection; β-NMR: nuclear magnetic resonance with detection by β-decay asymmetry; β-NQR: zero-field nuclear quadrupole resonance with detection by β-decay asymmetry; CRIS: Collinear Resonance Ionization Spectroscopy; CS: collinear spectroscopy; FC: Frequency-Comb; GCS: gas cell spectroscopy; IGLIS: In-Gas Laser Ionization and Spectroscopy; IS-RIS: In-Source Resonance Ionization Spectroscopy; ITS: Ion Trap Spectroscopy; LIF: laser induced fluorescence; LIOP-SGA: Laser-induced Optical pumping of an atomic beam Stern Gerlach Analyzer; LIS: laser ion source; LPOPA: Larmor Precession of Optically Pumped Atoms; MOT: magneto-optical trap; MR-TOF: Multi-Reflection Time-of-Flight; MWDR: microwave double-resonance; NDD: Nuclear Decay Detection; OP: optical pumping; PICO: Photon-Ion-Coincidence; PTS: Paul-Trap Spectroscopy; RADOP: beta-Radiation Detected Optical Pumping; RADRIS: nuclear radiation detected resonance ionization spectroscopy; RFQ: radio frequency ion trap; RIMS: resonance ionization mass spectroscopy; RIS + SSGJ: resonance ionization spectroscopy in a supersonic gas jet; SEOP: Spin-Exchange Optical Pumping; SPOP: State Population by optical Pumping in RFQ; SSCI: state selective collissional ionization; SSN: state selective neutralization

Z A Data Technique Facility Reference

He

2
6 δ<r2> ATS Argonne NL [2, WWW]
6, 8 δ<r2> ATS Argonne NL [119]





Li





3
6-9, 11 I, μI, Qs CS + OP + β-NMR [Arn87a, Arn87b]
11 Qs CS + OP + β-NMR ISOLDE [3, ,4]
6-9 δ<r2> RIMS GSI [5, 6, ToPLiS]
6-9,11 δ<r2> RIMS ISAC, TRIUMF [79, 112, 113] [ToPLiS]
8,9 μI, Qs CS + OP + β-NMR ISOLDE [77]
9,11 I, Qs CS + OP + β-NMR ISOLDE [86]
9 Qs OP + β-NQR TRIUMF [111]
11 Qs β-NQR TRIUMF [139]





Be





4
11 μI LIS+ CS + β-NMR ISOLDE [7]
7,9-11 μI, δ<r2> FC + CS ISOLDE [88]
7 μI ITS + Cooling + MWDR RIKEN [89]
12 δ<r2> FC + CS+ PICO ISOLDE [120]
11 μI ITS + Cooling + MWDR RIKEN [137]
7, 9-12 ΔνIS FC + CS ISOLDE [147]
7, 9-12 δ<r2> FC + CS + PICO ISOLDE [164]


Ne


10
17-26, 28 I, μI, Qs, δ<r2> CS + SSCI + β ISOLDE [8, 75]
17-22 δ<r2> CS + SSCI + β ISOLDE [87]
17-19, 21-26, 28 δ<r2> CS + SSCI + β ISOLDE [116]



Na



11
21-31 δ<r2>, μI, I LIOP-SGA + MWDR ISOLDE [Hub78]
21-31 δ<r2>, Qs LIOP-SGA + MWDR ISOLDE [Tor85]
20 μI RADOP Karlsruhe [Schw75]
21 Δνhfs neutral atom trap Berkeley [9]
26-29
27-31
31
Qs
μI
I

CS+ β-NMR

ISOLDE

[10]




Mg




12
31 I, μI CS+ OP + β-NMR ISOLDE [76]
21 I, μI CS + β-NMR ISOLDE [95]
27, 29, 31 I, μI CS + LIF ISOLDE [82]
33 I, μI CS + OP + β-NMR ISOLDE [85]
21-32 δ<r2> CS + OP + β-NMR ISOLDE [118]
23 I, μI CS ISOLDE [166]
Al 13 26 μI ABS off-line [126, 127]

Ar

18
32-40, 46 μI, Qs, δ<r2> CS + SSCI + β ISOLDE [11]
40-44 I, μI, Qs, δ<r2> CS + SSCI + β ISOLDE [91]






K






19
36-47 I, μI, Qs, δ<r2> [74]
36 μI RADOP Karlsruhe [Schw75]
37 μI RADOP Karlsruhe [Köp69]
38-47 μI, δ<r2> LIOP-SGA ISOLDE [Tou82]
49, 51 I, μI CS + cooler RFQ ISOLDE [130]
38, 39, 42, 44, 46–51 I, δ<r2> CS + cooler RFQ ISOLDE [133]
38, 38m δ<r2> CS + cooler RFQ ISOLDE [136]
39, 47, 49, 51 μI CS + cooler RFQ ISOLDE [138]
36, 37 δ<r2> CS + cooler RFQ NSCL [152]





Ca





20
41,43,45 Qs, δ<r2> ABS [Ber80]
41-48 δ<r2>, μI ABS Karlsruhe [And82]
40-48 δ<r2> CS + SSN ISOLDE [12]
50 δ<r2> CS + SSN + β ISOLDE [13]
39 δ<r2> CS + SSN + β ISOLDE [14]
49, 51 I, μI, Qs CS + cooler RFQ ISOLDE [142]
49-52 δ<r2> CS + cooler RFQ ISOLDE [154]

Sc

21
43-46, 44m, 45m μI, Qs, δ<r2> CS + cooler RFQ Jyväskylä [100]
42 δ<r2> CS + cooler RFQ Jyväskylä [100]
Ti 22 44, 45 δ<r2> CS + cooler RFQ Jyväskylä [15], [15a]



Mn



25
50-56, 50m, 52m δ<r2>, μI, Qs CS + cooler RFQ Jyväskylä [99]
51, 53, 55, 57, 59, 61, 63 μI, I CS + cooler RFQ ISOLDE [148]
54, 56, 58, 60, 62, 64, 58m, 60m, 62m μI, I CS + cooler RFQ ISOLDE [149]
51, 53, 55, 57, 59, 61, 63 μI, Qs CS + cooler RFQ ISOLDE [157]
51, 53−64 δ<r2> CS + cooler RFQ + SPOP ISOLDE [163]

Fe

26
52, 53 δ<r2> CS + cooler RFQ NSCL [161]
53 μI, Qs CS + cooler RFQ NSCL [176]







Cu







29
68g,m; 70g,m1,m2 μI IS-RIS ISOLDE [16]
57,59 μI IGLIS LISOL [96]
58,59 μI, Is IS-RIS ISOLDE [90]
71,73,75 μI, I IS-RIS + CS ISOLDE [94]
57, 58, 59, 60 μI, I IGLIS LISOL [108]
61-75, 68m, 70m1,m2 μI, Qs CS + cooler RFQ ISOLDE [109]
58-62 μI, Qs CS + cooler RFQ ISOLDE [114]
75,77,78 μI, I IS-RIS ISOLDE [122]
58-75 δ<r2> CS + cooler RFQ ISOLDE [156]
73-78 μI, Qs CRIS ISOLDE [171]


Zn


30
79 I, μI, δ<r2> CS + cooler RFQ ISOLDE [155]
63, 65, 67, …, 79, 69m, 71m, 73m, … 79m I, μI, Qs CS + cooler RFQ ISOLDE [167]
73m I CS + cooler RFQ ISOLDE [178]




Ga




31
67,69,71,73,75,77,79,81 I, μI, Qs IS-RIS ISOLDE [97]
80m I, μI, Qs CS + cooler RFQ ISOLDE [107]
72,74,76,78 μI, Qs CS + cooler RFQ ISOLDE [115]
63,64,66,68-82,80m I, μI, Qs, δ<r2> CS + cooler RFQ ISOLDE [123]
82 I, μI, Qs CS + cooler RFQ ISOLDE [124]
65,67,69,75,79-82 I, μI, Qs, δ<r2> CRIS ISOLDE [172]


Kr


36
88, 90 δ<r2> CS TRISTAN [17]
72, 74-96, 79m, 81m, 83m, 85m I, μI, Qs, δ<r2> CS + SSCI ISOLDE [18]
72, 74-96, 79m, 81m, 83m, 85m δ<r2> CS + SSCI ISOLDE [19]




Rb




37
76-98, 78m, 81m, 82m, 84m, 86m, 90m I, μI, Qs, δ<r2> LIOP-SGA ISOLDE [Thi81]
82 hfs neutral atom trap Los Alamos [20]
74, 75 δ<r2>, I CS + cooler RFQ TRIUMF [121]
98m1 98m2 I, μI, Qs, δ<r2> CS + cooler RFQ TRIUMF [141]
98, 98m μI, Qs, δ<r2> CS + cooler RFQ TRIUMF [150]





Sr





38
80-90, 85m, 87m μI, Qs, δ<r2> ABS [Buc85, Ans86, Ans87]
78-84 δ<r2> CS + PICO Daresbury [Eas87]
92, 94, 96, 98, 100 δ<r2> CS + SSN ISOLDE [Sil88]
79, 81, 83m, 87m, 89, 91, 93, 95, 97 μI, Qs CS + SSN ISOLDE [Buc87a, Buc87b]
78-98, 100, 83m, 85m, 87m I, μI, Qs, δ<r2> CS ISOLDE [21]
99 I, μI, Qs, δ<r2> CS + SSN ISOLDE [22]
77 I, μI, Qs, δ<r2> CS + SSN ISOLDE [23]
77-100 δ<r2> CS + SSN ISOLDE [19]




Y




39
86-90, 92-102, 87m, 88m, 89m, 90m, 93m, 96m, 97m, 97m2, 98m μI, Qs, δ<r2> CS + LIF JYFL [80]
100m I, μI, Qs CS + cooler RFQ + SPOP Jyväskylä [110]
97m2 δ<r2> CS + cooler RFQ Jyväskylä [78]
89, 96, 98 δ<r2> CS + cooler RFQ + SPOP Jyväskylä [177]

Zr

40
96-102 μI, Qs, δ<r2> CS + cooler RFQ Jyväskylä [24]
87-89, 87m, 89m I, μI, Qs, δ<r2> CS + cooler RFQ Jyväskylä [15, 25]
Nb 41 90-93, 90m, 91m, 99,101,103 δ<r2> OP Jyväskylä [98]
Mo 42 90,91,102-106,108 μI, δ<r2> CS + cooler RFQ Jyväskylä [92]

Ag

47
101, 103-105, 105m, 106m, 107, 109 μI, Qs, δ<r2> CS [26]
97-101 I, μI, δ<r2> IGLIS LISOL [131]



Cd



48
102-116, 118, 120, 111m, 113m, 115m I, μI, Qs, δ<r2> GCS ISOLDE [Buc87c]
107,109,111,…,129, 111m,113m,115m,…,129m I, μI, Qs CS + cooler RFQ ISOLDE [128]
107, 109, 111,…, 125, 111m, 113m, 115m,,…, 125m I, μI, Qs CS ISOLDE [143]
111m-129m δ<r2> CS + cooler RFQ ISOLDE [162]
101, 103, 105, 107, 109 I, μI, Qs CS + cooler RFQ ISOLDE [181]



In



49
107- 109, 110m, 111 μI, Qs, δ<r2> CS GSI [Ulm85]
105,106 μI, Qs, δ<r2> CS GSI [Loc85]
108,108m μI, Qs, δ<r2> CS GSI [Ebe86]
104, 112, 112m, 114, 115m, 116-126, 116m-126m, 127 I, μI, Qs, δ<r2> CS GSI [Ebe87b]




Sn




50
110-121, 117m, 121m μI, Qs, δ<r2> ABS Karlsruhe [Ans86b]
108-112, 114-120, 122, 124 μI, Qs, δ<r2> CS GSI [Ebe87]
126-132, 125m, 127m, 129m, 130m, 131m δ<r2> RIMS ISOLDE [27]
126-132, 125m, 127m, 129m, 130m, 131m μI, Qs, δ<r2> RIMS ISOLDE [83]

Te

52
133, 135, 125m, 127m, 129m, 131m, 133m I, μI, Qs LIS [101]
132, 134, 136 δ<r2> [102]

Xe

54
116-146 (even), 129, 131, 137, 139, 141, 143 I, μI, Qs, δ<r2> [Bor88]
116-146 (even), 137, 139, 141, 143 I, μI, Qs, δ<r2> CS + SSCI ISOLDE [28]




Cs




55
137-139 μI, Qs, δ<r2> CS TRIGA Mainz [Sch78b]
123-132, 137, 130m δ<r2> LIOP-SGA ISOLDE [Hub78b]
138-142 μI, Qs, δ<r2> CS TRIGA Mainz [Bon79]
118-145, 119m, 121m, 122m, 130m, 134m, 135m, 136m, 138m I, μI, Qs, δ<r2> LIOP-SGA ISOLDE [Thi81b]
118, 146 μI, Qs, δ<r2> LIOP-SGA ISOLDE [Coc87]
126 μI OP + ABMR ISOLDE [84]





Ba





56
126, 128-134, 136, 136, 140, 129m, 133m, 135m μI, Qs, δ<r2> ABS Karlsruhe [Bek89]
122, 123, 125, 127, 139-146, 131m, 137m I, μI, Qs, δ<r2> CS ISOLDE [Mue83]
124 δ<r2> ABS Karlsruhe [Reb80]
134-146, 148 μI, Qs, δ<r2> CS ISOLDE [Wen88]
120, 121 μI, Qs, δ<r2> CS Daresbury [Eas87b]
130m μI, Qs, δ<r2> CS + cooler RFQ Jyväskylä [29]
127m I, μI, Qs, δ<r2> CS DOLIS [30]
La 57 135, 137 μI, Qs, δ<r2> CS + LIF JAERI [81]
Ce 58 146, 148 δ<r2> CS + cooler RFQ [103]

Nd

60
132, 134-146, 148, 150 I, μI, Qs, δ<r2> RIMS Gatchina [Alk87]
132, 134-143 μI, Qs, δ<r2> RIMS Gatchina [31]



Sm



62
138-145, 141m I, μI, Qs, δ<r2> RIMS Gatchina [Alk87]
146,151,153 I, μI, Qs, δ<r2> ABS Daresbury [Eas84]
138-145, 141m μI, Qs, δ<r2> RIMS Gatchina [31]







Eu







63
145-149 δ<r2> RIMS Gatchina [Alk83]
141-144 δ<r2> RIMS Gatchina [Fed84]
151-154 Qs, δ<r2> RIMS Gatchina [Doe83]
147, 149, 155, 156, 152m μI, Qs, δ<r2> CS Gatchina [Doe84]
140-153, 142m, 150m μI, Qs, δ<r2> CS ISOLDE [Ahm85]
138, 139 δ<r2> RIMS Gatchina [Alk87]
155-159 μI, Qs, δ<r2> RIMS Gatchina [32]
138-145 δ<r2> RIMS Gatchina [31]
148, 149, 150, 151, 153 Qs, hfs anomaly MW-DR in ion trap ISOLDE [33]

Gd

64
146-160 δ<r2> RIMS Gatchina [34]
145, 145m, 143m δ<r2> [104]
145, 145m μI, Qs [104]
Tb 65 147-155,157,159 μI, Qs, δ<r2> RIMS Gatchina [35]

Dy

66
149, 151, 153, 155, 157, 159 I, μI, Qs CS ISOLDE [Ott89] (Table 20)
146, 148-164 δ<r2> CS ISOLDE [Ott89] (Table 19)



Ho



67
152-155, 157-163, 152m, 154m, 158m, 160m, 162m I, μI, Qs, δ<r2> RIMS Gatchina [Alk87]
151-163, 151m, 152m, 154m, 156m, 158m, 160m, 162m I, μI, Qs, δ<r2> CS ISOLDE [Ott89] (Table 20)
152-163, 152m, 153m, 154m, 158m, 160m I, μI, Qs, δ<r2> RIMS Gatchina [36]

Er

68
153, 155, 157, 159, 161, 163, 165 I, μI, Qs CS ISOLDE [Ahm85b]
152, 154, 156, 158, 160, 162, 164 δ<r2> CS ISOLDE [Ott89] (Table 21)


Tm


69
156-172 I, μI, Qs, δ<r2> RIMS Gatchina [Alk87]
157-172 μI, Qs, δ<r2> RIMS Gatchina [37]
153, 154, 154m μI, Qs, δ<r2> IS-RIS Gatchina [38]








Yb








70
156, 158, 160-174, 176 I, μI, Qs, δ<r2> CS ISOLDE [Buc82] and [Ott89] (Table 23)
159, 161, 163, 165, 167, 169 I, μI, Qs [Ne83]
152-158 (even) δ<r2> GCS Stony Brook [39]
157, 159, 175 I, μI, δ<r2> CS + RIMS ISOLDE [40]
154-156, 160, 162, 164, 166 μI, Qs, δ<r2> IS-RIS Gatchina [41, 42]
155 μI, Qs, δ<r2> IS-RIS Gatchina [38]
153 μI, Qs, δ<r2> IS-RIS Gatchina [43]
176m I, μI, Qs, δ<r2> CS + LIF JYFL [78]
175, 176m, 177, 177m μI, Qs, δ<r2> CS + cooler RFQ JYFL [125]

Lu

71
161-179, 166m1, 166m2, 167m, 168m, 169m, 171m, 172m, 174m, 176m, 177m, 178m μI, Qs, δ<r2> CS ISOLDE [44]




Hf




72
178m2 μI, Qs, Δνisomer CS Orsay [45]
170, 172-174 δ<r2> CS Jyväskylä [46]
171g,m μI, Qs, δ<r2> CS Jyväskylä [47]
175 μI, Qs, δ<r2> CS + cooler RFQ Jyväskylä [48]
178m1 I, μI, Qs, δ<r2> CS + LIF JYFL [78]
Ir 77 182-189, 191, 193, 186m μI, Qs, δ<r2> RIMS ISOLDE [49]





Pt





78
186-198 (even) δ<r2> [Lee88]
186-198 (even) δ<r2> RIMS ISOCELE [50]
185, 187, 189, 191, 195 μI, Qs, δ<r2> RIMS ISOCELE [51]
183-196, 198, 185m μI, Qs, δ<r2> RIMS ISOLDE [52]
178-182, 183m μI, Qs, δ<r2> RIMS ISOLDE [53]
183, 185, 185m μI, Qs, δ<r2> RIMS ISOLDE [54]








Au








79
195, 197 δ<r2> GCS ISOLDE [Klu83]
190-193, 195 δ<r2> GCS ISOLDE [Str85]
185-189, 189m μI RIMS ISOLDE [Wal87]
185-190, 189m μI, δ<r2> RIMS ISOLDE [Wal87a]
186, 187, 190, 192, 194, 195-199 μI, δ<r2> RIMS ISOLDE [55]
183-197 μI, Qs, δ<r2> RIMS ISOLDE [56]
191-194 μI, Qs, δ<r2> RIMS ISOLDE [57]
184, 184m μI, Qs, δ<r2> RIMS ISOLDE [58]
184, 184m, 191, 193, 195 μI, Qs, δ<r2> RIMS ISOLDE [54]


Hg


80
185m, 187m, 189m, 191m, 193m, 195m, 197m, 199m μI, Qs, δ<r2> GCS ISOLDE [Dab79]
182, 184, 186, 188, 190, 192, 194, 196, 198 δ<r2> CS ISOLDE [Ulm86]
181-206, 185m, 187m, 189m, 191m, 193m, 195m, 197m, 199m I, μI, Qs, δ<r2> Summary in [Ulm86]






Tl






81
207 μI CS ISOLDE [Ne85]
189m, 191m, 193m, 193 Qs CS Oak Ridge [Bou85]
189-194, 189m, 191m, 193m μI, Qs, δ<r2> CS Oak Ridge [Bou87]
188m, 190g,m-192g,m, 194g,m, 196g,m μI, Qs, δ<r2> CS GSI [59]
208 μI, δ<r2> RADRIS [60]
187, 188 μI, Qs CS Oak Ridge [61]
183g, 184m1, 185m, 185g, 186m2, 187m, 195m, 197m, 203g, 205g, 207g μI, δ<r2> IS-RIS Gatchina [135]
179-184, 184m1, 184m2, 184m3, 183m, 182m1, 182m2 I, μI, δ<r2> IS-RIS ISOLDE [168]





Pb





82
196-212, 214, 197m, 202m μI, Qs, δ<r2> ABS Karlsruhe, FR2 [Tho83], [Ans86c]
192, 194, 195m, 196, 204, 206-208 μI, Qs, δ<r2> CS GSI [Din87]
190, 191, 193, 197 μI, Qs, δ<r2> CS GSI [62]
185m1, m2 I, μI IS-RIS ISOLDE [63]
182-190, 183-189 δ<r2>, μI, Qs RIMS ISOLDE [105], [93]
Pb81+ 207 hfs anomaly storage ring GSI [64]


Bi


83
202, 203, 204 δ<r2>, μI, Qs GCS Stony Brook [65]
205-210, 210m, 212, 213 δ<r2>, μI, Qs GCS / ABS ISOLDE [66, 67]
208 μI, Qs CS + cooler RFQ ISOLDE [175]
Bi82+ 209 hfs anomaly storage ring GSI [68]



Po



84
200, 202, 204-210 μI, Qs, δ<r2> LIF FZ Karlsruhe [69]
192-210, 216, 218 δ<r2> IS-RIS ISOLDE [106]
191hs, 193s, 193hs, 195s, 195hs, 197, 197m, 199, 199m, 201, 201m, 203, 203m, 209, 211 δ<r2> IS-RIS ISOLDE [129]
211, 216, 217, 217m, 218 μI, Qs, δ<r2> IS-RIS ISOLDE [151]
At 85 195-211, 195m, 197-198m,199m, 200m1, 200m2, 202m μI, Qs, δ<r2> IS-RIS + MR-TOF + NDD ISOLDE [179]

Rn

86
202, 204-212, 218-223,225, 203m I, μI, Qs, δ<r2> [Ott89] (Table 29)
209 μI SEOP + β-NMR ISOLDE [Kit88]
203m, 205, 207, 209, 211, 219, 221 μI CS ISOLDE [Bor87]












Fr












87
208-213 A, B, δν LIOP-SGA ISOLDE [Lib80]
207-213, 220-228 μI, Qs, δ<r2> LIOP-SGA ISOLDE [Coc85], [Coc87]
213, 220, 221 μI, Qs, δ<r2> CS ISOLDE [Duo87]
210 hfs anomaly neutral atom trap Stony Brook [70]
210 hfs neutral atom trap Stony Brook [71]
204-206, 208 I, μI, Qs, δ<r2> CS + cooler RFQ ISAC, TRIUMF [132]
202g, 202m, 203, 204g, 204m1, 204m2, 205, 206g, 206m1, 206m2, 207, 211, 220, 221 μI, δ<r2> CRIS ISOLDE [134]
204, 204m, 206, 206m I, μI, δ<r2> CS + cooler RFQ TRIUMF [140]
206-213, 221 δ<r2> MOT TRIUMF [144, 145]
206g, 206m, 207, 209, 213, 221 hfs anomaly MOT TRIUMF [146]
219 Qs CRIS ISOLDE [153]
206g, 206m1, 206m2 μI, Qs, δ<r2> CRIS ISOLDE [158]
213, 214 I, δ<r2> CRIS ISOLDE [159]
203, 207 Qs CRIS ISOLDE [170]




Ra




88
211, 213, 221, 223, 225, 227, 229 I, μI, Qs CS ISOLDE [Ahm83]
212, 214, 221-226 μI, Qs, δ<r2> CS ISOLDE [Neu88]
208-214, 220-230, 232 μI, Qs, δ<r2> CS ISOLDE [Ahm88]
213, 225 μI CS + LPOPA ISOLDE [Arn87a]
209-214 ΔνIS PTS TRIμP [117]
222-233 μI, Qs, δ<r2> CRIS ISOLDE [174]

Ac

89
212-215, 227 μI, Qs, δ<r2> RIS + SSGJ LISOL [165]
212-215 I, μI, Qs IGLIS & RIS + SSGJ LISOL [173]
Pu 94 239, 241 δ<r2> CS & RIMS JYFL & Mainz [169]
Am 95 240f,242f,244f Qs, δ<r2> RADRIS Heidelberg [72, 73]

No

102
254 IP RADRIS SHIP, GSI [160]
252, 253, 254 μI, Qs, δ<r2> RADRIS SHIP, GSI [180]
 

Publications

[Ahm83] S. A. Ahmad, W. Klempt, R. Neugart, E. W. Otten, K. Wendt, C. Ekström, the ISOLDE Collaboration
Determination of nuclear spins and moments in a series of radium isotopes
Phys. Lett. 133 B: 47 (1983)
[Ahm85] S. A. Ahmad, W. Klempt, C. Ekström, R. Neugart and K. Wendt
Nuclear spins, moments, and changes of the mean square charge radii of 140-153Eu
Zeitschrift für Physik A 321: 35-45 (1985)
[Ahm85b] S. A. Ahmad, C. Ekström, W. Klempt, R. Neugart, and K. Wendt
Proceedings of the “Symposium on Quantum Electronics,” Bombay (1985)
[Ahm88] S. A. Ahmad, W. Klempt, R. Neugart, E. W. Otten, K. Wendt, C. Ekström, the ISOLDE Collaboratio
Mean square charge radii of radium isotopes and octupole deformation in the 220–228Ra region
Nucl. Phys. A 483: 244 (1988)
[Alk83] G. D. Alkhazov, A. E. Barzakh, É. I. Berlovich, V. P. Denisov, A. G. Dernyatin, V. S. Ivanov, A. N. Zherikhin, O. N. Kompanets, V. S. Letokhov, V. I. Mishin and V. N. Fedoseev
Measurement of isotopic variations in the charge radii of europium nuclei by the method of three-stepped laser photoionization of atoms
JETP Lett. 37: 274-278 (1983)
[Alk87] G. D. Alkhazov, A. E. Barzakh, V. N. Buyanov, V. P. Denisov, V. S. Ivanov, V. S. Letokhov, V. I. Mishin, S. K. Sekatsky, V. N. Fedoseyev, and I. Y. Chubukov
Preprint 1309, Institute of Nuclear Physics of the Academy of Sciences USSR, Leningrad (1987)
Published: Isotopic Shifts of Mean-Square Charge Radii and Electromagnetic Moments of the Nuclei of Samarium and Neodymium Isotopes with N-less-than-82
Izvestiya Akademii Nauk Sssr Seriya Fizicheskaya 52, 1651 (1988)
[And82] A. Andl, K. Bekk, S. Göring, A, Hanser, G. Nowicki, H. Rebel, G. Schatz, and R. C. Thompson
Isotope shifts and hyperfine structure of the 4s21S0-4s4p1P1 transition in calcium isotopes
Phys. Rev. C 26, 2194–2202 (1982)
[Ans86] M. Anselment, S. Chongkum, K. Bekk, S. Göring, A. Hanser, G. Meisel, and H. Rebel
Isotope shift of a series of Sr isotopes
Z. Phys. D 3, 421-422 (1986)
[Ans86b] M. Anselment, K. Bekk, A. Hanser, H. Hoeffgen, G. Meisel, S. Göring, H. Rebel, and G. Schatz
Charge radii and moments of tin nuclei by laser spectroscopy
Phys. Rev. C 34, 1052–1059 (1986)
[Ans86c] M. Anselment, W. Faubel, S. Göring, A. Hanser, G. Meisel, H. Rebel, and G. Schatz
The odd-even staggering of the nuclear charge radii of Pb isotopes
Nucl. Phys. A 451: 471 (1986)
[Ans87] M. Anselment, K. Bekk, S. Chongkum, S. Göring, A. Hanser, H. Hoeffgen, W. Kälber, G. Meisel, and H. Rebel
Charge radii and moments of strontium nuclei by laser spectroscopy
Z. Phys. A 326, 493-500 (1987)
[Arn87a] E. Arnold, W. Borchers, M. Carre, H. T. Duong, P. Juncar, J. Lerme, S. Liberman, W. Neu, R. Neugart, E. W. Otten, M. Pellarin, J. Pinard, G. Ulm, J. L. Vialle, and K. Wendt
Direct measurement of nuclear magnetic moments of radium isotopes
Phys. Rev. Lett. 59, 771–774 (1987)
[Arn87b] E. Arnold, J. Bonn, R. Gegenwart, W. Neu, R. Neugart, E. W. Otten, G. Ulm, and K. Wendt
Nuclear spin and magnetic moment of 11Li
Phys. Lett. B 197, 311-314 (1987)
[Bek89] K. Bekk, A. Andl, S. Göring, A. Hanser, G. Nowicki, H. Rebel and G. Schatz
Laserspectroscopic Studies of Collective Properties of Neutron Deficient Ba Nuclei
Zeitschrift für Physik A 291: 219-230 (1979)
[Ber80] E. Bergmann, P. Bopp, C. Dorsch, J. Kowalski, F. Träger, and G. zu Putlitz
Nuclear charge distribution of eight Ca-nuclei by laser spectroscopy
Z. Phys. A 294, 319-322 (1980)
[Bon79] J. Bonn, W. Klempt, R. Neugart, E. W. Otten and B. Schinzler
Hyperfine structure and isotope shifts of neutron-rich138–146Cs
Zeitschrift für Physik A 289: 227-228 (1979)
[Bor87] W. Borchers, R. Neugart, E. W. Otten, H. T. Duong, G. Ulm, and K. Wendt
Hyperfine structure and isotope shift investigations in 202-222Rn for the study of nuclear structure beyond Z=82
Hyperfine Interact. 34:25 (1987)
[Bor88] W. Borchers., E. Arnold, W. Neu, R. Neugart, K. Wendt, G. Ulm and the ISOLDE Collaboration
Xenon isotopes far from stability studied by collisional ionization laser spectroscopy
Physics Letters B 216: 7-10 (1989)
[Bou85] J. A. Bounds, C. R. Bingham, P. Juncar, H. K. Carter, G. A. Leander, R. L. Mlekodaj, E. H. Spejewski, and W. M. Fairbank, Jr.
Role of Deformation in the Intrusion of the h9/2 Levels below the Z=82 Proton Shell
Phys. Rev. Lett. 55: 2269 (1985)
[Bou87] J. A. Bounds, C. R. Bingham, H. K. Carter, G. A. Leander, R. L. Mlekodaj, E. H. Spejewski, and W. M. Fairbank, Jr.
Nuclear structure of light thallium isotopes as deduced from laser spectroscopy on a fast atom beam
Phys. Rev. C 36: 2560 (1987)
[Buc82] F. Buchinger, A. C. Mueller, B. Schinzler, K. Wendt, C. Ekström, W. Klempt, and R. Neugart
Fast-beam laser spectroscopy on metastable atoms applied to neutron-deficient ytternium isotopes
Nucl. Instrum. Methods 202: 159 (1982)
[Buc85] F. Buchinger, R. Corriveau, E. B. Ramsay, D. Berdichevsky, and D. W. L. Sprung
Influence of the N=50 shell closure on mean square charge radii of strontium
Phys. Rev. C 32, 2058–2066 (1985)
[Buc87a] F. Buchinger, E. B. Ramsay, R. E. Silverans, P. Lievens, E. Arnold, W. Neu, R. Neugart, K. Wendt, and G. Ulm
Nuclear ground state spins of short-lived strontium isotopes
Z. Phys. A 327,361-362 (1987)
[Buc87b] F. Buchinger , E. B. Ramsay , R. E. Silverans , P. Lievens , E. Arnold , W. Neu , R. Neugart , K. Wendt , G. Ulm and ISOLDE Collaboration
Nuclear ground state properties of strontium isotopes (78≤A≤100) by laser spectroscopy
AIP Conf. Proc. 164, 197 (1987)
[Buc87c] F. Buchinger, P. Dabkiewicz, H.-J. Kluge, A.C. Mueller, E.-W. Otten
The N-dependence of Cd mean square charge radii (54 <= N <=72) and the nuclear moments of 103Cd
Nucl. Phys. A 462, 305-332 (1987)
[Coc85] A. Coc, C. Thibault, F. Touchard, H. T. Duong, P. Juncar, S. Liberman, J. Pinard, J. Lerme, J. L. Vialle, S. Büttgenbach, A. C. Mueller, A. Pesnelle, the ISOLDE Collaboration
Hyperfine structures and isotope shifts of 207–213,220–228Fr; Possible evidence of octupolar deformation
Phys. Lett. 163 B: 66 (1985)
[Coc87] A. Coc, C. Thibault, F. Touchard, H. T. Duong, P. Juncar, S. Liberman, J. Pinard, M. Carre, J. Lerme, J. L. Vialle, S. Buttgenbach, A. C. Mueller , A. Pesnelle, and ISOLDE Collaboration
Isotope shifts spins and hyperfine structures of 118,146Cs and of some francium isotopes
Nuclear Physics A 468 1-10 (1987)
[Dab79] P. Dabkiewicz, F. Buchinger, H. Fischer, H. J. Kluge, H. Kremmling, T. Kühl, A. C. Müller, and H. A. Schuessler
Nuclear shape isomerism in 185Hg detected by laser spectroscopy
Phys. Lett. 82 B: 199 (1979)
[Din87] U. Dinger, J. Eberz, G. Huber, R. Menges, S. Schröder, R. Kirchner, O. Klepper, T. Kühl, D. Marx, and G. D. Sprouse
Nuclear moments and change in the charge-radii of neutron deficient lead isotopes
Z. Phys. A 328: 253 (1987)
[Doe83] K. Dörschel, W. Heddrich, H. Hühnermann, E. W. Peau, W. Wagner, G. D. Alkhazov, E. Y. Berlovich, V. P. Denisov, V. N. Panteleev and A. G. Polyakov
Nuclear moments and isotope shifts of europium isotopes by hyperfine structure investigations with collinear laser – Ion beam spectroscopy
Zeitschrift für Physik A 312: 269-270 (1983)
[Doe84] K. Dörschel, W. Heddrich, H. Hühnermann, E. W. Peau, H. Wagner, G. D. Alkhazov, E. Y. Berlovich, V. P. Denison, V. N. Panteleev and A. G. Polyakov
Investigations of europium isotopes with neutron numbers between 84 and 93 by collinear laser ion-beam spectroscopy
Zeitschrift für Physik A 317: 233-234 (1984)
[Duo87] H. T. Duong, P. Juncar, S. Liberman, A. C. Mueller, R. Neugart, E. W. Otten, B. Peuse, J. Pinard, H. H. Stroke, C. Thibault, F. Touchard, J. L. Vialle, K. Wendt and ISOLDE Collaboration
First Observation of the Blue Optical Lines of Francium
Europhys. Lett. 3: 175 (1987)
[Eas84] D. A. Eastham, P. M. Walker, J. A. R. Griffith, D. E. Evans, I. S. Grant, J. G. England, and M. J. Fawcett
Proc. 7th Int. Conf. on Atomic Masses and Fundamental Constants AMCO-7 (O. Klepper, ed.), p. 322, Darmstadt-Seeheim (1984)
[Eas87] D. A. Eastham, P. M. Walker, J. R. H. Smith, D. D. Warner, J. A. R. Griffith, D. E. Evans, S. A. Wells, M. J. Fawcett, and I. S. Grant
Nuclear charge radii of proton-rich strontium isotopes
Phys. Rev. C 36, 1583–1586 (1987)
[Eas87b] D. A. Eastham, J. R. H. Smith, J. Groves, D. D. Warner, D. W. L. Tolfree, S. A. Wells, J. A. R. Griffith, D. E. Evans, M. J. Fawcett, I. S. Grant, J. Billowes, and P. M. Walker
Laser measurements of radii and moments of barium nuclei near the proton drip line
The Fifth International Conference on Nuclei far from Stability (I. S. Towner, ed.), American Institute of Physics, New York (1987)
AIP Conf. Proc. 164, 136 (1987)
[Ebe86] J. Eberz, U. Dinger, T. Horiguchi, G. Huber, H. Lochmann, R. Menges, R. Kirchner, O. Klepper, T. Kühl, D. Marx, E. Roeckl, D. Schardt, and G. Ulm
Collinear laser spectroscopy on 108g, 108m In using an ion source with bunched beam release
Z Phys. A 323: 119 (1986)
[Ebe87] J. Eberz, U. Dinger, G. Huber, H. Lochmann, R. Menges, G. Ulm, R. Kirchner, O. Klepper, T. Kühl, and D. Marx
Nuclear spins, moments and charge radii of 108−111Sn
Z. Phys. A 326: 121 (1987)
[Ebe87b] J. Eberz, U. Dinger, G. Huber, H. Lochmann, R. Menges, R. Neugart, R. Kirchner, O. Klepper, T. Kühl, D. Marx, G. Ulm, K. Wendt, and ISOLDE Collaboration
Spins, moments and mean square charge radii of 104–127In determined by laser spectroscopy
Nucl. Phys. A 464: 9 (1987)
[Fed84] V. N. Fedoseyev, V. S. Letokhov, V. I. Mishin, G. D. Alkhazov, A. E. Barzakh, V. P. Denisov, A. G. Dernyatin and V. S. Ivanov
Atomic lines isotope shifts of short-lived radioactive Eu studied by high-sensitive laser resonance photoionization method in “on-line” experiments with proton beams
Optics Communications 52: 24-28 (1984)
[Hub78] G. Huber, F. Touchard, S. Büttenbach, C. Thibault, R. Klapisch, H. T. Duong, S. Liberman, J. Pinard, J. L. Vialle, P. Juncar, and P. Jaquinot
Spins, magnetic moments, and isotope shifts of 21-31Na by high resolution laser spectroscopy of the atomic D1 line
Phys. Rev. C 18, 2342–2354 (1978)
[Hub78b] G. Huber, F. Touchard, S. Büttgenbach, C. Thibault, R. Klapisch, S. Liberman, J. Pinard, H. T. Duong, P. Juncar, J. L. Vialle, P. Jacquinot and A. Pesnelle, and ISOLDE Collaboration
Isotope Shift of Eleven Cesium Isotopes Determined by Atomic-Beam Laser Spectroscopy
Physical Review Letters 41: 459-462 (1978)
[Kit88] M. Kitano, F. P. Calaprice, M. L. Pitt, J. Clayhold, W. Happer, M. Kadar-Kallen, M. Musolf, G. Ulm, K. Wendt, T. Chupp, J. Bonn, R. Neugart, E. W. Otten, and H. T. Duong
Nuclear Orientation of Radon Isotopes by Spin-Exchange Optical Pumping
Phys. Rev. Lett. 60: 2133 (1988)
[Klu83] H. J. Kluge, H. Kremmling, H. A. Schuessler, J. Streib, and K. Wallmeroth
Determination of the isotope shift in the D1 line between 197Au and 195Au
Z. Phys. A 309: 187 (1983)
[Köp69] U. Köpf, H. J. Besch, E. W. Otten, and C. von Platen
Optical pumping of short lived Β-radioactive isotopes and the magnetic moment of 37K
Z. Phys. 226, 297-327 (1969)
[Lee88] J. K. P. Lee, G. Savard, J. E. Crawford, G. Thekkadath, H. T. Duong, J. Pinard, S. Liberman, F. L. Blanc, P. Kilcher, J. Obert, J. Oms, J. C. Putaux, B. Roussière and J. Sauvage
Charge-radius changes in even-A platinum nuclei
Physical Review C 38: 2985–2988 (1988)
[Lib80] S. Liberman, J. Pinard, H. T. Duong, P. Juncar, P. Pillet, J. L. Vialle, P. Jaquinot, F. Touchard, S. Büttgenbach, C. Thibault, M. de Saint Simon, R. Klapisch, A. Pesnelle, and G. Huber
Laser optical spectroscopy on francium D2 resonance line
Phys. Rev. A 22: 2732 (1980)
[Loc85] H. Lochmann, U. Dinger, J. Eberz, G. Huber, R. Menges, G. Ulm, R. Kirchner, O. Klepper, T. Kühl, D. Marx, and D. Schardt
Nuclear moments and charge radii of 105, 106In
Z. Phys. A 322: 703 (1985)
[Mue83] A. C. Mueller, F. Buchinger, W. Klempt, E. W. Otten, R. Neugart, C. Ekstrom and J. Heinemeier
Spins, moments and charge radii of barium isotopes in the range 122-146Ba determined by collinear fast-beam laser spectroscopy
Nuclear Physics A 403: 234-262 (1983)
[Ne83] R. Neugart, K. Wendt, S. A. Ahmad, W. Klempt, and C. Ekström
Nuclear moments and charge radii of rare-earth isotopes studied by collinear fast-beam laser spectroscopy
Hyperfine Interact. 15/16: 181 (1983)
[Ne85] R. Neugart, H. H. Stroke, S. A. Ahmad, H. T. Duong, H. L. Ravn, and K. Wendt
Nuclear Magnetic Moment of 207Tl
Phys. Rev. Lett. 55: 1559 (1985)
[Neu88] W. Neu, R. Neugart, E. W. Otten, G. Passler, K. Wendt, B. Fricke, E. Arnold, H. J. Kluge, and G. Ulm
Quadrupole moments of radium isotopes from the 7p2 P3/2 hyperfine structure in Ra II
Z. Phys. D 11, 105 (1988)
[Reb80] H. Rebel, K. Bekk, G. Nowicki, and G. Schatz
Nukleonika 25: 145 (1980)
[Sch78b] B. Schinzler, W. Klempt, S. L. Kaufman, H. Lochmann, G. Moruzzi, R. Neugart, E. W. Otten, J. Bonn, L. Von Reisky and K. P. C. Spath
Collinear laser spectroscopy of neutron-rich Cs isotopes at an on-line mass separator
Physics Letters B 79: 209-212 (1978)
[Schw75] H. Schweickert, J. Dietrich, R. Neugart, and E. W. Otten
Nuclear spins and magnetic moments of 20NA and 36K by β-radiation detected optical pumping
Nucl. Phys. A 246, 187-209 (1975)
[Sil88] R. F. Silverans, P. Lievens, V. L. Vermeeren, F. Buchinger, E. B. Ramsay, E. Arnold, W. Neu, R. Neugart, G. Ulm, and K. Wendt
Nuclear Charge Radii of 78-100Sr by Nonoptical Detection in Fast-Beam Laser Spectroscopy
Phys. Rev. Lett. 60, 2607–2610 (1988)
[Str85] J. Streib, H. J. Kluge, H. Kremmling, R. B. Moore, H. W. Schaaf, and K. Wallmeroth
Isotope shifts of neutron-deficient gold isotopes with 193≧A≧190
Z Phys. A 321: 537 (1985)
[Thi81] C. Thibault, F. Touchard, S. Büttgenbach, R. Klapisch, M. de Saint Simon, H. T. Duong, P. Jaquinot, P. Juncar, S. Liberman, P. Pillet, J. Pinard, J. L. Vialle, A. Pesnelle, and G. Huber
Hyperfine structure and isotope shift of the D2 line of 76-98Rb and some of their isomers
Phys. Rev. C 23, 2720–2729 (1981)
[Thi81b] C. Thibault, F. Touchard, S. Büttgenbach, R. Klapisch, M. De Saint Simon, H. T. Duong, P. Jacquinot, P. Juncar, S. Liberman, P. Pillet, J. Pinard, J. L. Vialle, A. Pesnelle and G. Huber
Hyperfine structure and isotope shift of the D2 line of 118-145Cs and some of their isomers
Nuclear Physics A 367: 1-12 (1981)
[Tho83] R. C. Thompson, M. Anselment, K. Bekk, S. Göring, A. Hanser, G. Meisel, H. Rebel, G. Schatz, and B. A. Brown
High-resolution measurements of isotope shifts and hyperfine structure in stable and radioactive lead isotopes
J. Phys. G 9: 443 (1983)
[Tor85] G. Torbohm, B. Fricke, and A. Rosen
State-dependent volume isotope shifts of low-lying states of group-IIa and -IIb elements
Phys. Rev. A 31, 2038–2053 (1985)
[Tou82] F. Touchard, P. Guimbal, S. Büttgenbach, T. Klapisch, M. de Saint Simon, J. M. Serre, C. Thibault, H. T. Duong, P. Juncar, S. Liberman, J. Pinard, and J. L. Vialle
Isotope shifts and hyperfine structure of 38–47K by laser spectroscopy
Phys. Lett. B 108, 169-171 (1982)
[Ulm85] G. Ulm, J. Eberz, G. Huber, H. Lochmann, R. Menges, R. Kirchner, O. Klepper, T. Kühl, P. O. Larsson, D. Marx, D. Murnick, and D. Schardt
Nuclear moments and charge radii of 107–111In determined by laser spectroscopy
Z. Phys. A 321: 395 (1985)
[Ulm86] G. Ulm, S. K. Bhattacherjee, P. Dabkiewicz, G. Huber, H. J. Kluge, T. Kühl, H. Lochmann, E. W. Otten, K. Wendt, S. A. Ahmad, W. Klempt, and R. Neugart
Isotope shift of 182Hg and an update of nuclear moments and charge radii in the isotope range 181Hg-206Hg
Z Phys. A 325: 247 (1986)
[Wal87] K. Wallmeroth, G. Bollen, M. J. G. Borge, J. Campos, A. Dohn, P. Egelhof, J. Grüner, H. J. Kluge, U. Krönert, F. Lindenlauf, R. B. Moore, A. Rodriguez, A. Venugopalan, and J. Wood
Nuclear shape transition in neutron-deficient gold isotopes
Hyperfine Interact. 34: 21 (1987)
[Wal87a] K. Wallmeroth, G. Bollen, A. Dohn, P. Egelhof, J. Grüner, J. Campos, A. Rodriguez, M. J. G. Borge, A. Venugopalan, J. L. Wood, R. B. Moore, and H. J. Kluge
Sudden change in the nuclear charge distribution of very light gold isotopes
Phys. Rev. Lett. 58: 1516 (1987)
[Wen88] K. Wendt, S. A. Ahmad, C. Ekström, W. Klempt, R. Neugart and E. W. Otten
Hyperfine structure and isotope shift of the neutron-rich barium isotopes 139–146Ba and 148Ba
Zeitschrift für Physik A 329: 407-411 (1988)
1. Otten, E.W., Nuclear radii and moments of unstable isotopes, in Treatise on heavy-ion science, D.A. Bromley, Editor. 1989. p. 517-638.
2. Wang, L.-B., P. Mueller, K. Bailey, G.W.F. Drake, J.P. Greene, D. Henderson, R.J. Holt, R.V.F. Janssens, C.L. Jiang, Z.-T. Lu, T.P. O'Connor, R.C. Pardo, K.E. Rehm, J.P. Schiffer, and X.D. Tang
Laser Spectroscopic Determination of the 6He Nuclear Charge Radius
Phys. Rev. Lett. 93, 142501 (2004).
3. Arnold, E., J. Bonn, A. Klein, R. Neugart, M. Neuroth, E.W. Otten, P. Lievens, H. Reich, W. Widdra, and ISOLDE Collaboration
Quadrupole moment of 11Li
Phys. Lett. B 281, 16-19 (1992).
4. Arnold, E., J. Bonn, A. Klein, P. Lievens, R. Neugart, M. Neuroth, E.W. Otten, H. Reich, and W. Widdra
The quadrupole moment of the neutron-halo nucleus 11Li
Z. Phys. A 349, 337-338 (1994).
5. Ewald, G., W. Nörtershäuser, A. Dax, S. Götte, R. Kirchner, H.-J. Kluge, T. Kühl, R. Sanchez, A. Wojtaszek, B.A. Bushaw, G.W.F. Drake, Z.-C. Yan, and C. Zimmermann
Nuclear Charge Radii of 8,9Li Determined by Laser Spectroscopy
Phys. Rev. Lett. 93, 113002 (2004).
6. Ewald, G., W. Nörtershäuser, A. Dax, S. Götte, R. Kirchner, H.-J. Kluge, T. Kühl, R. Sanchez, A. Wojtaszek, B.A. Bushaw, G.W.F. Drake, Z.-C. Yan, and C. Zimmermann
Erratum: Nuclear Charge Radii of 8,9Li Determined by Laser Spectroscopy
Phys. Rev. Lett. 94, 039901(E) (2005).
7. Geithner, W., S. Kappertz, M. Keim, P. Lievens, R. Neugart, L. Vermeeren, S. Wilbert, V.N. Fedoseyev, U. Köster, V.I. Mishin, V. Sebastian, and ISOLDE Collaboration
Measurement of the Magnetic Moment of the One-Neutron Halo Nucleus 11Be
Phys. Rev. Lett. 83, 3792-3795 (1999).
8. Geithner, W., K.M. Hilligsoe, S. Kappertz, G. Katko, M. Keim, S. Kloos, G. Kotrotsios, P. Lievens, K. Marinova, R. Neugart, L. Vermeeren, and S. Wilbert
Accurate isotope shift measurements on short-lived neon isotopes
Hyperf. Int. 127, 117-120 (2000).
9. Rowe, M.A., S.J. Freedman, B.K. Fujikawa, G. Gwinner, S.-Q. Shang, and P.A. Vetter
Ground-state hyperfine measurement in laser-trapped radioactive 21Na
Phys. Rev. A 59, 1869-1873 (1999).
10. Keim, M., U. Georg, A. Klein, R. Neugart, M. Neuroth, S. Wilbert, P. Lievens, L. Vermeeren, B.A. Brown, and ISOLDE Collaboration
Measurement of the electric quadrupole moments of 26-29Na
Eur. Phys. J. A 8, 31-40 (2000).
11. Klein, A., B.A. Brown, U. Georg, M. Keim, P. Lievens, R. Neugart, M. Neuroth, R.E. Silverans, L. Vermeeren, and ISOLDE Collaboration
Moments and mean square charge radii of short-lived argon isotopes
Nucl. Phys. A 607, 1-22 (1996).
12. Mårtensson-Pendrill, A.-M., A. Ynnerman, H. Warston, L. Vermeeren, R.E. Silverans, A. Klein, R. Neugart, C. Schulz, and P. Lievens
Isotope shifts and nuclear-charge radii in singly ionized 40-48Ca
Phys. Rev. A 45, 4675-4681 (1992).
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Precision hfs of 126Cs(T1/2=1.63 m) by ABMR
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Spin and Magnetic Moment of 33Mg: Evidence for a Negative-Parity Intruder Ground State
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Precision measurement of 11Li moments: influence of halo neutrons on the 9Li core
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Masses and Charge Radii of 17-22Ne and the Two-Proton-Halo Candidate 17Ne
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Nuclear Charge Radii of 7,9,10Be and the One-Neutron Halo Nucleus 11Be
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Precision Measurement of the Hyperfine Structure of Laser-Cooled Radioactive 7Be+ Ions Produced by Projectile Fragmentation
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90. Stone, N.J., U. Köster, J.R. Stone, D.V. Fedorov, V.N., Fedoseyev, K.T. Flanagan, M. Hass, and S. Lakshmi
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Nuclear moments and charge radii of argon isotopes between the neutron-shell closures N=20 and N=28
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Nuclear charge radii of molybdenum fission fragments
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Charge radii and magnetic moments of odd-A 183-189Pb isotopes
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Nuclear Spins and Magnetic Moments of 71,73,75Cu: Inversion of π2p3/2 and pi 1f5/2 Levels in 75Cu
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Nuclear ground-state spin and magnetic moment of 21Mg
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Magnetic Dipole Moment of 57,59Cu Measured by In-Gas-Cell Laser Spectroscopy
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Nuclear Spins and Moments of Ga Isotopes Reveal Sudden Structural Changes between N=40 and N=50
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Laser Spectroscopy of Niobium Fission Fragments: First Use of Optical Pumping in an Ion Beam Cooler Bunche
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99. F.C. Charlwood, J. Billowes, P. Campbell, B. Cheal, T. Eronen, D.H. Forest, S. Fritzsche, e, M. Honma, A. Jokinen, I.D. Moore, H. Penttilä, R. Powis, A. Saastamoinen, G. Tungate and J. Äystö
Ground state properties of manganese isotopes across the N=28 shell closure
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Nuclear charge radii and electromagnetic moments of radioactive scandium isotopes and isomers
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Laser Spectroscopy Measurements of Neutron-Rich Tellurium Isotopes by COMPLIS
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Signs of dynamical effects for Cd, Sn, Te, Xe, Ba and Sm nuclear charge radii
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Collinear laser spectroscopy of neutron-rich cerium isotopes near the N = 88 shape transition
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Laser spectroscopic studies of 145Gd, 145Gdm, and 143Gdm
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Nuclear Charge Radii of Neutron-Deficient Lead Isotopes Beyond N=104 Midshell Investigated by In-Source Laser Spectroscopy
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Early Onset of Ground State Deformation in Neutron Deficient Polonium Isotopes
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Discovery of a long-lived low-lying isomeric state in 80Ga
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Magnetic dipole moments of 57,58,59Cu
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Nuclear spins, magnetic moments, and quadrupole moments of Cu isotopes from N=28 to N=46: Probes for core polarization effects
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Nuclear spin determination of 100mY by collinear laser spectroscopy of optically pumped ions
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Nuclear electric quadrupole moment of 9Li using zero-field β-detected NQR
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112. W. Nörtershäuser, R. Sánchez, G. Ewald, A. Dax, J. Behr, P. Bricault, B. A. Bushaw, J. Dilling, M. Dombsky, G. W. F. Drake, S. Götte, H.-J. Kluge, Th. Kühl, J. Lassen, C. D. P. Levy, K. Pachucki, M. Pearson, M. Puchalski, A. Wojtaszek, Z.-C. Yan, C. Zimmermann
Isotope-shift measurements of stable and short-lived lithium isotopes for nuclear-charge-radii determination
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Charge radii and ground state structure of lithium isotopes: Experiment and theory reexamined
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Isotope shifts of the 6d2 D3/2–7p2 P1/2 transition in trapped short-lived 209-214Ra+
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Nuclear Charge Radii of 21-32Mg
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Nuclear Charge Radius of 8He
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Nuclear Charge Radius of 12Be
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First Experimental Determination of the Charge Radius of 74Rb and Its Application in Tests of the Unitarity of the Cabibbo-Kobayashi-Maskawa Matrix
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